碳化硅陶瓷基复合材料表面环境障涂层结合强度

SU Chaoqun,DENG Longhui,LIU Ruoyu,JIANG Jianing, YUN Haitao,LI Gui, MIAO Xiaofeng,CHEN Wenbo, YI Chushan,LIU Li,DONG Shujuan,CAO Xueqiang

Journal of Materials Engineering(2024)

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Abstract
SiC陶瓷基复合材料(SiC-based ceramic matrix composites,SiC-CMC)是发展高推重比航空发动机理想的高温结构材料.为了防止发动机服役环境下燃气(富含H2O和O2)对SiC-CMC的腐蚀,需要在其表面制备抗水氧腐蚀、抗燃气冲刷和抗热冲击性能优异的环境障涂层(environmental barrier coatings,EBCs).在评价EBCs性能的诸多因素中,其与SiC-CMC基体之间的结合强度是一个重要技术指标,但结合强度的极限值一直未被探究清楚.本工作研究影响结合强度的主要因素,包含SiC-CMC基体状态、单晶Si的拉伸强度极限,以及Si黏结层的制备工艺等,获得了制备最高结合强度的有效途径.在EBCs与SiC-CMC组成的体系中,基体内部SiC纤维布之间的界面是结合强度最薄弱的部位,其次是EBCs的Si层.整个体系的结合强度极限值是15 MPa,它是单晶Si在[400]晶向的拉伸强度极限.采用大气等离子喷涂或者超音速火焰喷涂的Si黏结层结合强度相似,均低于同样工艺制备的莫来石或Yb2Si2O7涂层.
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Key words
SiC,composite,environmental barrier coatings,bonding strength
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